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首页> 外文期刊>Journal of nonlinear science >Complex dynamics in a hysteretic relay feedback system with delay
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Complex dynamics in a hysteretic relay feedback system with delay

机译:迟滞磁滞继电器反馈系统中的复杂动力学

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摘要

Relay feedback systems are used to control engineering devices. In practice the switching between different functional forms of the system is never instantaneous, but takes place after a small delay. In this paper we analyse the dynamics and bifurcations of a representative example of such systems. In the absence of delay, negative feedback results only in unimodal symmetric limit cycles, but positive feedback can lead to aperiodic trajectories and chaos. In the presence of delay, the system can behave as an equivalent system without delay, provided that the delay is small in a sense which we define precisely. For larger delays, we identify a new bifurcation phenomenon, an event collision, where the delayed switching manifold intersects the relay hysteretic lines. In this case the dynamics become much more complicated.
机译:继电器反馈系统用于控制工程设备。在实践中,系统的不同功能形式之间的切换永远不会立即发生,而是会在短暂延迟后进行。在本文中,我们分析了此类系统的典型示例的动力学和分支。在没有延迟的情况下,负反馈仅导致单峰对称极限环,但正反馈会导致非周期性轨迹和混乱。在存在延迟的情况下,只要在我们精确定义的意义上延迟很小,该系统就可以像没有延迟的等效系统一样工作。对于较大的延迟,我们确定了新的分叉现象,即事件冲突,其中延迟的开关歧管与继电器磁滞线相交。在这种情况下,动力学变得更加复杂。

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